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Artikel-Nr: (4.80160.2500)
Lieferant: Merck
Beschreibung: Kaliumpermanganat 0.05 mol/l (0.25 N) in wässriger Lösung, Titripur® volumetrische Lösung, Supelco®
VE: 1 * 2,5 L

Artikel-Nr: (1.09122.1000)
Lieferant: Merck
Beschreibung: Kaliumpermanganat 0.02 mol/l (0.1 N) in wässriger Lösung, Titripur® Reag. USP volumetrische Lösung, Supelco®
VE: 1 * 1 L

Lieferant: Merck
Beschreibung: Kaliumperoxodisulfat, EMSURE® ACS, Reag. Ph. Eur. zur Analyse, Supelco®
Artikel-Nr: (APOSBIA0867-1KG)
Lieferant: Apollo Scientific
Beschreibung: Potassium-L-aspartate
VE: 1 * 1 kg


Lieferant: ENZO LIFE SCIENCES
Beschreibung: Okadasäure Kaliumsalz

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Lieferant: Merck
Beschreibung: Kaliumdihydrogencitrat ≥98%, Supelco®

Lieferant: Thermo Scientific
Beschreibung: Potassium sulphamate 98%
Lieferant: Avantor
Beschreibung: Kaliumpermanganat, BAKER ANALYZED® ACS, J.T.Baker®
Lieferant: Apollo Scientific
Beschreibung: Inhibitor of bacterial cell wall synthesis. It inhibitsthe crosslinking of peptidoglycan by binding and inactivating of transpeptidases.

Lieferant: Merck
Beschreibung: Kaliumperoxodisulfat, EMSURE® zur Analyse, Supelco®
Lieferant: Merck
Beschreibung: For full details of specification and hazards please see www.vwr.com or the VWR Chemicals catalogues
Artikel-Nr: (BOSSBS-13046R-A555)
Lieferant: Bioss
Beschreibung: Excitatory Amino Acid Transporters (EAATs) are membrane-bound proteins that are localized in glial cells and pre-synaptic glutamatergic nerve endings. EAATs transport the excitatory neurotransmitters L-glutamate and D-aspartate, a process that is essential for terminating the postsynaptic action of glutamate. The re-uptake of amino acid neurotransmitters by EAAT proteins has been shown to protect neurons from excitotoxicity, which is caused by the accumulation of amino acid neurotransmitters. EAAT4 is an aspartate/glutamate transporter that is expressed predominantly in the cerebellum. The transport activity encoded by EAAT4 has high apparent affinity for L-aspartate and L-glutamate, and has a pharmacologic profile consistent with previously described cerebellar transport activities. EAAT5 is a glutamate transporter coupled to a chloride conductance which is expressed primarily in retina. Although EAAT5 shares the structural homologies of the EAAT family, a novel feature of the EAAT5 sequence is a carboxy-terminal motif previously identified in N-ethyl-D-aspartate receptors and potassium channels and shown to confer interactions with a family of synaptic proteins that promote ion channel clustering.
VE: 1 * 100 µl


Artikel-Nr: (BOSSBS-13046R-A750)
Lieferant: Bioss
Beschreibung: Excitatory Amino Acid Transporters (EAATs) are membrane-bound proteins that are localized in glial cells and pre-synaptic glutamatergic nerve endings. EAATs transport the excitatory neurotransmitters L-glutamate and D-aspartate, a process that is essential for terminating the postsynaptic action of glutamate. The re-uptake of amino acid neurotransmitters by EAAT proteins has been shown to protect neurons from excitotoxicity, which is caused by the accumulation of amino acid neurotransmitters. EAAT4 is an aspartate/glutamate transporter that is expressed predominantly in the cerebellum. The transport activity encoded by EAAT4 has high apparent affinity for L-aspartate and L-glutamate, and has a pharmacologic profile consistent with previously described cerebellar transport activities. EAAT5 is a glutamate transporter coupled to a chloride conductance which is expressed primarily in retina. Although EAAT5 shares the structural homologies of the EAAT family, a novel feature of the EAAT5 sequence is a carboxy-terminal motif previously identified in N-ethyl-D-aspartate receptors and potassium channels and shown to confer interactions with a family of synaptic proteins that promote ion channel clustering.
VE: 1 * 100 µl


Lieferant: Merck
Beschreibung: Kaliumcarbonat, EMSURE® ACS, ISO, Reag. Ph. Eur. zur Analyse, Supelco®
Artikel-Nr: (BOSSBS-13046R-A350)
Lieferant: Bioss
Beschreibung: Excitatory Amino Acid Transporters (EAATs) are membrane-bound proteins that are localized in glial cells and pre-synaptic glutamatergic nerve endings. EAATs transport the excitatory neurotransmitters L-glutamate and D-aspartate, a process that is essential for terminating the postsynaptic action of glutamate. The re-uptake of amino acid neurotransmitters by EAAT proteins has been shown to protect neurons from excitotoxicity, which is caused by the accumulation of amino acid neurotransmitters. EAAT4 is an aspartate/glutamate transporter that is expressed predominantly in the cerebellum. The transport activity encoded by EAAT4 has high apparent affinity for L-aspartate and L-glutamate, and has a pharmacologic profile consistent with previously described cerebellar transport activities. EAAT5 is a glutamate transporter coupled to a chloride conductance which is expressed primarily in retina. Although EAAT5 shares the structural homologies of the EAAT family, a novel feature of the EAAT5 sequence is a carboxy-terminal motif previously identified in N-ethyl-D-aspartate receptors and potassium channels and shown to confer interactions with a family of synaptic proteins that promote ion channel clustering.
VE: 1 * 100 µl


Artikel-Nr: (BOSSBS-13046R-A488)
Lieferant: Bioss
Beschreibung: Excitatory Amino Acid Transporters (EAATs) are membrane-bound proteins that are localized in glial cells and pre-synaptic glutamatergic nerve endings. EAATs transport the excitatory neurotransmitters L-glutamate and D-aspartate, a process that is essential for terminating the postsynaptic action of glutamate. The re-uptake of amino acid neurotransmitters by EAAT proteins has been shown to protect neurons from excitotoxicity, which is caused by the accumulation of amino acid neurotransmitters. EAAT4 is an aspartate/glutamate transporter that is expressed predominantly in the cerebellum. The transport activity encoded by EAAT4 has high apparent affinity for L-aspartate and L-glutamate, and has a pharmacologic profile consistent with previously described cerebellar transport activities. EAAT5 is a glutamate transporter coupled to a chloride conductance which is expressed primarily in retina. Although EAAT5 shares the structural homologies of the EAAT family, a novel feature of the EAAT5 sequence is a carboxy-terminal motif previously identified in N-ethyl-D-aspartate receptors and potassium channels and shown to confer interactions with a family of synaptic proteins that promote ion channel clustering.
VE: 1 * 100 µl


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Lager für diesen Artikel ist begrenzt, kann aber in einem Lagerhaus in Ihrer Nähe zur Verfügung. Bitte stellen Sie sicher, dass Sie in sind angemeldet auf dieser Seite, so dass verfügbare Bestand angezeigt werden können. Wenn das call noch angezeigt wird und Sie Hilfe benötigen, rufen Sie uns an 1-800-932 - 5000.
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